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Eddies Detached from a Jet Crossing over a Submarine Ridge Using a Simple Numerical Model

机译:使用简单的数值模型从一个海底山脊上的喷射分离的Eddies

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An eastward-flowing jet crossing over a submarine ridge is studied using a two-layer quasi-geostrophic model. The jet initially has small-amplitude meanders of one wavelength to the west of the ridge, and the lower layer is quiescent only at t = 0. The meanders grow propagating eastward, and the lower layer begins to move and feel bottom topography. Then, the ridge influences meanders and eddies that are detached from large-amplitude meanders. Detached, cyclonic eddies are strengthened south of the jet on the western slope of the ridge, as are anticyclonic eddies north of the jet on the eastern slope, because of vorticity generated by the topographic effects on the westward flows associated with two recirculating gyres which form on the north and south of the jet. Consistent with topographic Rossby wave theory, some of these eddies approach and coalesce with the jet.

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